Zhu Zhimin, Zhao Juan, Huang Xu
West China College of Stomatology, Sichuan University.
Hua Xi Kou Qiang Yi Xue Za Zhi. 2002 Oct;20(5):316-9.
The purpose of this study was to investigate effects of cryotreat on the corrosion resistance of SDA-II medium melting-point castable alloy.
12 samples were divided into three groups, including the control group, the cryotreated group and the cryotreated & post-cryogenic treated group. The cryotreating process was firstly dropping the temperature from room temperature to -170 degrees C with dropping rate 3 degrees C/min, maintaining -170 degrees C for 2 hrs, and then returning to ambient temperature with an increasing rate of 1 degree C/min. The post-cryogenic process was maintaining the samples in 300 degrees C for 1 hr. Finally, all samples were subjected to the electrochemical potentiodynamic polarization after immersed in the artificial saliva (ISO/TR 10271: 1993 (E), pH 6.8) for 24 hrs at ambient temperature. The exposing area of each sample was 10 mm x 10 mm. The electrochemical tests were carried out in the artificial saliva under 37 degrees C, with the scanning rate of 20 mV/min, starting potential -200 mV below OCP and stopping current 10(-3) A. The corrosion currents (Icorr), the pitting corrosion potentials (Eb) and the potentiodynamic polarization curves were observed using the 283 electrochemical corrosion measuring system automatically.
For SDA-II medium melting-point castable alloy, cryotreat reduced corrosion rate of the alloy, but had no effect on the pitting corrosion potential. As far as the post-cryogenic treatment, it didn't affect the corrosion resistance.
The results suggested that cryotreat was an effective procedure in enhancing the corrosion resistance of SDA-II medium melting-point castable alloy, and it may be applicable in prosthetic dentistry.
本研究旨在探讨低温处理对SDA-II中熔铸合金耐腐蚀性的影响。
将12个样本分为三组,包括对照组、低温处理组和低温处理及低温后处理组。低温处理过程为首先将温度从室温以3℃/min的降温速率降至-170℃,在-170℃保持2小时,然后以1℃/min的升温速率回升至环境温度。低温后处理过程为将样本在300℃保持1小时。最后,所有样本在环境温度下于人工唾液(ISO/TR 10271: 1993 (E),pH 6.8)中浸泡24小时后进行电化学动电位极化测试。每个样本的暴露面积为10mm×10mm。电化学测试在37℃的人工唾液中进行,扫描速率为20mV/min,起始电位低于开路电位200mV,终止电流为10⁻³A。使用283电化学腐蚀测量系统自动观察腐蚀电流(Icorr)、点蚀电位(Eb)和动电位极化曲线。
对于SDA-II中熔铸合金,低温处理降低了合金的腐蚀速率,但对点蚀电位没有影响。至于低温后处理,它不影响耐腐蚀性。
结果表明,低温处理是提高SDA-II中熔铸合金耐腐蚀性的有效方法,可能适用于口腔修复学。